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靶向LecA的光开关糖配体

Photoswitchable glycoligands targeting LecA.

作者信息

Fan Yu, El Rhaz Ahmed, Maisonneuve Stéphane, Gillon Emilie, Fatthalla Maha, Le Bideau Franck, Laurent Guillaume, Messaoudi Samir, Imberty Anne, Xie Juan

机构信息

Université Paris-Saclay, ENS Paris-Saclay, Institut d'Alembert, CNRS, Photophysique et Photochimie Supramoléculaires et Macromoléculaires, 91190, Gif-sur-Yvette, France.

Université Paris-Saclay, CNRS, BioCIS, 92290, Orsay, France.

出版信息

Beilstein J Org Chem. 2024 Jul 3;20:1486-1496. doi: 10.3762/bjoc.20.132. eCollection 2024.

Abstract

Biofilm formation is one of main causes of bacterial antimicrobial resistance infections. It is known that the soluble lectins LecA and LecB, produced by , play a key role in biofilm formation and lung infection. Bacterial lectins are therefore attractive targets for the development of new antibiotic-sparing anti-infective drugs. Building synthetic glycoconjugates for the inhibition and modulation of bacterial lectins have shown promising results. Light-sensitive lectin ligands could allow the modulation of lectins activity with precise spatiotemporal control. Despite the potential of photoswitchable tools, few photochromic lectin ligands have been developed. We have designed and synthesized several - and -galactosyl azobenzenes as photoswitchable ligands of LecA and evaluated their binding affinity with isothermal titration calorimetry. We show that the synthesized monovalent glycoligands possess excellent photophysical properties and strong affinity for targeted LecA with values in the micromolar range. Analysis of the thermodynamic contribution indicates that the -azobenzene isomers have a systematically stronger favorable enthalpy contribution than the corresponding -isomers, but due to stronger unfavorable entropy, they are in general of lower affinity. The validation of this proof-of-concept and the dissection of thermodynamics of binding will help for the further development of lectin ligands that can be controlled by light.

摘要

生物膜形成是细菌抗微生物耐药性感染的主要原因之一。已知由[具体细菌名称未给出]产生的可溶性凝集素LecA和LecB在生物膜形成和肺部感染中起关键作用。因此,细菌凝集素是开发新型抗生素节省型抗感染药物的有吸引力的靶点。构建用于抑制和调节细菌凝集素的合成糖缀合物已显示出有希望的结果。光敏凝集素配体可以实现对凝集素活性的精确时空控制调节。尽管光开关工具具有潜力,但很少有光致变色凝集素配体被开发出来。我们设计并合成了几种作为LecA光开关配体的[具体结构未给出]-和-半乳糖基偶氮苯,并通过等温滴定量热法评估了它们的结合亲和力。我们表明,合成的单价糖配体具有优异的光物理性质,并且对靶向的LecA具有强亲和力,解离常数在微摩尔范围内。对热力学贡献的分析表明,反式偶氮苯异构体比相应的顺式异构体具有系统更强的有利焓贡献,但由于更强的不利熵,它们总体上亲和力较低。这种概念验证的验证以及结合热力学的剖析将有助于进一步开发可由光控制的凝集素配体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e17d/11228623/d84cd06fde2b/Beilstein_J_Org_Chem-20-1486-g002.jpg

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